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Resolving Configurational Disorder for Impurities in a Low-Entropy Phase.

作者信息

Mergelsberg Sebastian T, Prange Micah, Song Duo, Bylaska Eric J, Saslow Sarah A, Catalano Jeffrey G, Ilton Eugene S

机构信息

Pacific Northwest National Laboratory, Richland, Washington 99354, United States.

Department of Earth and Planetary Sciences, Washington University, St. Louis, Missouri 63130, United States.

出版信息

J Phys Chem Lett. 2021 Jun 24;12(24):5689-5694. doi: 10.1021/acs.jpclett.1c01218. Epub 2021 Jun 11.

Abstract

Hematite (α-FeO) exerts a strong control over the transport of minor but critical metals in the environment and is used in multiple industrial applications; the photocatalysis community has explored the properties of hematite nanoparticles over a wide range of transition metal dopants. Nonetheless, simplistic assumptions are used to rationalize the local coordination environment of impurities in hematite. Here, we use ab initio molecular dynamics (AIMD)-guided structural analysis to model the extended X-ray absorption fine structure (EXAFS) of Cu- and Zn-doped hematite nanoparticles. Specific defect-impurity associations were identified, and the local coordination environments of Cu and Zn both displayed considerable configurational disorder that, in aggregate, approached Jahn-Teller-like distortion for Cu but, in contrast, maintained hematite-like symmetry for Zn. This study highlights the role of defects in accommodating impurities in a nominally low-entropy phase and the limits to traditional shell-by-shell fitting of EXAFS for dopants/impurities in unprecedented bonding environments.

摘要

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